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盐诱导激酶 2(SIK2)与蛋白磷酸酶 2A 的调节亚基 B55 同工型γ(B55γ)的关联通过抑制 S6K 的磷酸化作用促进了葡萄糖耗竭状态下神经胶质瘤细胞的存活。

The association between Salt-inducible kinase 2 (SIK2) and gamma isoform of the regulatory subunit B55 of PP2A (B55gamma) contributes to the survival of glioma cells under glucose depletion through inhibiting the phosphorylation of S6K.

机构信息

Department of Neurosurgery, Changhai Hospital, 168 Changhai Road, Shanghai, 200433 China.

出版信息

Cancer Cell Int. 2015 Feb 18;15:21. doi: 10.1186/s12935-015-0164-6. eCollection 2015.

Abstract

BACKGROUND

PPP2R2C encodes a gamma isoform of the regulatory subunit B55 subfamily consisting PP2A heterotrimeric with A and C subunits. Currently, the precise functions of B55gamma in cancer are still under investigating. In this project, we reported a novel function of B55gamma in the regulation of glucose metabolism in Glioma cells.

METHODS

Western blot and immunoprecipitation were performed to determine protein expression and interaction. Cell viability was measured by Typan Blue staining and direct cell counting using hematocytometer. siRNA technology was used to down regulate protein expression.

RESULTS

Glucose uptake and lactate product were suppressed by overexpression of B55gamma in Glioma cells. In addition, cancer cells with larger amount of B55gamma showed higher survival advantages in response to glucose starvation through the dephosphorylation of S6K. From proteomic analysis, we found B55gamma binds with and up regulates SIK2 through the stabilization of SIK2 protein which is required for the B55gamma-mediated suppression of S6K pathway. Knocking down of SIK2 in B55gamma over expressing cells recovered the phosphorylation of S6K.

CONCLUSION

In summary, our project will provide novel insight into the design and development of therapeutic strategies to target the B55gamma-mediated glucose metabolism for the treatment of human brain tumor patients.

摘要

背景

PPP2R2C 编码 B55 亚家族调节亚基的 γ 同工型,与 A 和 C 亚基组成 PP2A 三聚体。目前,B55γ 在癌症中的精确功能仍在研究中。在本项目中,我们报道了 B55γ 在调节神经胶质瘤细胞葡萄糖代谢中的一个新功能。

方法

通过 Western blot 和免疫沉淀实验来确定蛋白表达和相互作用。通过台盼蓝染色和血细胞计数器直接计数来测量细胞活力。使用 siRNA 技术下调蛋白表达。

结果

在神经胶质瘤细胞中过表达 B55γ 可抑制葡萄糖摄取和乳酸产物的产生。此外,通过 S6K 的去磷酸化,具有更多 B55γ 的癌细胞在葡萄糖饥饿时表现出更高的生存优势。通过蛋白质组学分析,我们发现 B55γ 通过 SIK2 蛋白的稳定与 SIK2 结合并上调 SIK2,这对于 B55γ 介导的 S6K 通路抑制是必需的。在过表达 B55γ 的细胞中敲低 SIK2 可恢复 S6K 的磷酸化。

结论

总之,我们的项目将为设计和开发针对 B55γ 介导的葡萄糖代谢的治疗策略提供新的见解,以治疗人脑肿瘤患者。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2537/4365562/973e0cf52c26/12935_2015_164_Fig1_HTML.jpg

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